Aqueous quantum dots (QDs) directly synthesized with various thiol ligands have been investigated as imaging probes in living cells. However, the effect of the surface chemistry of these ligands on QDs\u27 cellular uptakes and their intracellular fate remains poorly understood. In this work, four CdTe QDs were directly synthesized under aqueous conditions using four different thiols as stabilizers and their interactions with cells were investigated. Fluorescence correlation spectroscopy (FCS), X-ray photoelectron spectroscopy (XPS), and zeta potential measurements on QDs primarily show that the surface structure of these QDs is highly dependent on the thiol ligands used in the preparation of QDs\u27 precursors, including its layer thickness...
We present results on the dynamic fluorescence properties of bioconjugated nanocrystals or quantum d...
In recent years, activatable Quantum Dots (AQdots) are gaining popularity in a number of chemical an...
Quantum dots increasingly gain popularity for in vivo applications. However, their delivery and accu...
Aqueous quantum dots (QDs) directly synthesized with various thiol ligands have been investigated as...
Understanding the biophysical and chemical interactions of nanoprobes and their fate upon entering l...
Water-solubilized quantum dots have led to a promising application in cellular labeling and biologic...
In order to better understand nanoparticle uptake and elimination mechanisms, we designed a controll...
Luminescent quantum dots (QDs) with unique optical properties have potential applications in bio-ima...
Luminescent quantum dots (QDs) with unique optical properties have potential applications in bio-ima...
We have studied interactions between positively charged MUTAB-stabilized quantum dots (QDs) and mode...
Fluorescent inorganic quantum dots are highly promising for biomedical applications as sensing and i...
Water-soluble Quantum Dots (QDs) are highly sensitive fluorescent probes that are often used to stud...
Semiconductor quantum dots (QDs), particles several nanometers in diameter, exhibit a range of inter...
In this work, we have developed one-pot aqueous synthesis of glutathione (GSH) binding CdTe quantum ...
Quantum Dots (QDs) are semiconductor nanocrystals with unique optical properties. Their use as probe...
We present results on the dynamic fluorescence properties of bioconjugated nanocrystals or quantum d...
In recent years, activatable Quantum Dots (AQdots) are gaining popularity in a number of chemical an...
Quantum dots increasingly gain popularity for in vivo applications. However, their delivery and accu...
Aqueous quantum dots (QDs) directly synthesized with various thiol ligands have been investigated as...
Understanding the biophysical and chemical interactions of nanoprobes and their fate upon entering l...
Water-solubilized quantum dots have led to a promising application in cellular labeling and biologic...
In order to better understand nanoparticle uptake and elimination mechanisms, we designed a controll...
Luminescent quantum dots (QDs) with unique optical properties have potential applications in bio-ima...
Luminescent quantum dots (QDs) with unique optical properties have potential applications in bio-ima...
We have studied interactions between positively charged MUTAB-stabilized quantum dots (QDs) and mode...
Fluorescent inorganic quantum dots are highly promising for biomedical applications as sensing and i...
Water-soluble Quantum Dots (QDs) are highly sensitive fluorescent probes that are often used to stud...
Semiconductor quantum dots (QDs), particles several nanometers in diameter, exhibit a range of inter...
In this work, we have developed one-pot aqueous synthesis of glutathione (GSH) binding CdTe quantum ...
Quantum Dots (QDs) are semiconductor nanocrystals with unique optical properties. Their use as probe...
We present results on the dynamic fluorescence properties of bioconjugated nanocrystals or quantum d...
In recent years, activatable Quantum Dots (AQdots) are gaining popularity in a number of chemical an...
Quantum dots increasingly gain popularity for in vivo applications. However, their delivery and accu...